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dc.contributor.authorFujiwara, Masanorien
dc.contributor.authorInoue, Shunsukeen
dc.contributor.authorMasuno, Shin-ichiroen
dc.contributor.authorFu, Hainingen
dc.contributor.authorTokita, Shigekien
dc.contributor.authorHashida, Masakien
dc.contributor.authorMizuochi, Norikazuen
dc.contributor.alternative藤原, 正規ja
dc.contributor.alternative井上, 峻介ja
dc.contributor.alternative升野, 振一郎ja
dc.contributor.alternative付, 海寧ja
dc.contributor.alternative時田, 茂樹ja
dc.contributor.alternative橋田, 昌樹ja
dc.contributor.alternative水落, 憲和ja
dc.date.accessioned2023-03-16T05:13:27Z-
dc.date.available2023-03-16T05:13:27Z-
dc.date.issued2023-03-
dc.identifier.urihttp://hdl.handle.net/2433/279832-
dc.description一つの超短レーザーパルスでダイヤモンド量子センサ源を広領域で作製 --超短時間でダイヤモンドを超高感度量子センサに--. 京都大学プレスリリース. 2023-03-15.ja
dc.description.abstractRecently, ultrashort laser processing has attracted attention for creating nitrogen-vacancy (NV) centers because this method can create single NV centers in spatially-controlled positions, which is an advantage for quantum information devices. On the other hand, creating high-density NV centers in a wide region is also important for quantum sensing because the sensitivity is directly enhanced by increasing the number of NV centers. A recent study demonstrated the creation of high-density NV centers by irradiating femtosecond laser pulses, but the created region was limited to micrometer size, and this technique required many laser pulses to avoid graphitization of diamond. Here, we demonstrate the creation of NV centers in a wide region using only an intense single femtosecond laser pulse irradiation. We irradiated a diamond sample with a femtosecond laser with a focal spot size of 41 µm and a laser fluence of up to 54 J/cm², which is much higher than the typical graphitization threshold in multi-pulse processing. We found that single-pulse irradiation created NV centers without post-annealing for a laser fluence higher than 1.8 J/cm², and the region containing NV centers expanded with increasing laser fluence. The diameter of the area was larger than the focal spot size and reached over 100 µm at a fluence of 54 J/cm². Furthermore, we demonstrated the NV centers' creation in a millimeter-sized region by a single-shot defocused laser pulse over 1100 µm with a fluence of 33 J/cm². The demonstrated technique will bring interest in the fundamentals and applications of fabricating ultrahigh-sensitivity quantum sensors.en
dc.language.isoeng-
dc.publisherAIP Publishingen
dc.rights© 2023 Author(s).en
dc.rightsAll article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license.en
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/-
dc.titleCreation of NV centers over a millimeter-sized region by intense single-shot ultrashort laser irradiationen
dc.typejournal article-
dc.type.niitypeJournal Article-
dc.identifier.jtitleAPL Photonicsen
dc.identifier.volume8-
dc.identifier.issue3-
dc.relation.doi10.1063/5.0137093-
dc.textversionpublisher-
dc.identifier.artnum036108-
dc.addressInstitute for Chemical Research, Kyoto Universityen
dc.addressInstitute for Chemical Research, Kyoto Universityen
dc.addressInstitute for Chemical Research, Kyoto Universityen
dc.addressInstitute for Chemical Research, Kyoto Universityen
dc.addressInstitute for Chemical Research, Kyoto Universityen
dc.addressInstitute for Chemical Research, Kyoto University; Research Institute of Science and Technology, Tokai Universityen
dc.addressInstitute for Chemical Research, Kyoto University; Center for Spintronics Research Network, Kyoto University; International Center for Quantum-field Measurement Systems for Studies of the Universe and Particles (QUP), KEKen
dc.relation.urlhttps://www.kyoto-u.ac.jp/ja/research-news/2023-03-15-
dcterms.accessRightsopen access-
datacite.awardNumber21H04653-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-21H04653/-
dc.identifier.eissn2378-0967-
jpcoar.funderName日本学術振興会ja
jpcoar.awardTitleダイヤモンドNV中心の量子状態高度制御による量子センシング顕微鏡計測研究ja
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